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应用宏基因组新一代测序诊断伴有血小板减少综合征的严重发热:一病例报告和文献综述
Authors Zhan L, Huang K, Xia W, Chen J, Wang L, Lu J, Wang J, Lin J, Wu W
Received 11 November 2021
Accepted for publication 21 December 2021
Published 11 January 2022 Volume 2022:15 Pages 83—89
DOI https://doi.org/10.2147/IDR.S345991
Checked for plagiarism Yes
Review by Single anonymous peer review
Peer reviewer comments 3
Editor who approved publication: Professor Suresh Antony
Background: Severe fever with thrombocytopenia syndrome (SFTS) is an infectious disease caused by a bunyaviridae virus. Its main clinical manifestation is fever with thrombocytopenia, which may be accompanied by other clinical symptoms. Here, we report a patient diagnosed with SFTS using metagenomic next-generation sequencing (mNGS).
Case Presentation: A 56-year-old female patient was hospitalized with intermittent diarrhea and fever. She visited a local clinic for treatment, but instead of improving, the symptoms progressed to unconsciousness.
Diagnosis: Using mNGS, we isolated the bunyaviridae virus and several other pathogens from the patient’s blood samples to confirm the diagnosis.
Interventions: The patient was treated with symptomatic and supportive therapy, including intravenous human γ-globulin (20 g/d), platelet transfusion, platelet elevation (subcutaneous injection of recombinant human thrombopoietin, 15,000 IU), white blood cell elevation (subcutaneous injection of recombinant human granulocyte colony-stimulating factor, 200 ug, qd); and antibiotic (cefoperazone sodium and tazobactam sodium, 2 g, q8h), antiviral (ganciclovir, 250 mg, q12h), and antifungal therapy (voriconazole for injection, 0.2 g, q12h). After ten days of treatment, the patient’s condition gradually improved.
Conclusion: Compared to traditional detection methods, mNGS has many advantages. It can quickly identify the pathogen when the patient’s clinical manifestations are complex and difficult to diagnose, resulting in the formulation of an effective treatment.
Keywords: severe fever with thrombocytopenia syndrome, metagenomic next-generation sequencing, bunyaviridae virus